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南海西沙海槽地区的海底热流测量 总被引:20,自引:0,他引:20
为了解南海西沙海槽区的地热特征,利用Ewing型地热探针在该区开展了地热测量,并利用TK04热导率仪测量了相关站位表层沉积物样品的热导率,获得了7个站位的热流数据。结果表明,研究区7个站位的热导率变化范围为0.88~1.06 W/m.K,平均为0.96 W/m.K,地温梯度变化范围为85~120℃/km,热流值变化范围为83~112 mW/m2,平均达到95 mW/m2。分析表明测量结果与20世纪80年代中美合作在西沙海槽的地热测量结果一致性较好,说明研究区仍具有高热流特征,推测高热流特征可能与本区高热背景、莫霍面埋深较浅、断裂发育、晚期岩浆活动和基底起伏等有关。 相似文献
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海底沉积物声速实验室测量结果校正研究 总被引:4,自引:0,他引:4
海底沉积物实验室测量状态与海底原状态存在较大差异,因此有必要进行声速校正.基于研究海底浅表层沉积物采样样品的原状态与实验室环境的差异,提出运用Hamilton声速校正模型对实验室测量沉积物声速数据进行校正,实现表层沉积物标准测量环境(23℃,1个大气压)下的声速校正到海底原状态;设计了温度变化实验测试南海海底沉积物的声速比变化,验证了Hamilton模型的可行性并将其推广到室温状态下各个温度的校正;分析了Hamilton声速校正模型应用于海底浅表层沉积物声速校正的可行性. 相似文献
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海底热流是研究大洋地壳和上地幔岩石圈热状态的重要参数。为了解南海深水区地热特征,利用IODP349航次地热调查资料进行数据处理,得到了4个站位浅层热导率数据和3个钻孔的海底热流数据。结果表明,浅层沉积物样品热导率变化范围为0.8~2.2 W/(m·K),变化范围与沉积物成分有关,热导率随深度的增加有小幅增加的趋势与沉积物压实作用有关;U1431D、U1432C和U1433A三个钻孔热流值分别为24±8mW/m2、105±3mW/m2和89±2mW/m2,后两个钻孔通过与前人实测数据进行对比,与前人结果相当,表明了结果的可靠性;U1431D发生地温梯度倒转和低热流异常可能是与钻孔处于水热循环的下降流附近有关。 相似文献
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《海洋地质与第四纪地质》2016,(2)
依据获取的热导率测量数据和多波束数据所反映的海底地貌特征,分析了南海东北部陆坡天然气水合物钻探区表层沉积物矿物组成、粒级以及区域地貌特征对热导率分布的控制作用。研究结果表明,钻探区表层沉积物热导率平均值为(1.26±0.12)W/(m·k),相对于南海北部陆坡热导率背景偏高,沉积物组分中既含有陆源浊流沉积体中的高热导率矿物,也含有由甲烷等为主要气源的生物化学反应而形成的具有高热导率特性的碳酸盐。钻探区表层沉积物热导率区域细节分布具有非常明显的特征,2区和5区属于海台地貌,海底表层分布有大面积的碳酸盐结壳,由于底流的剥蚀作用导致沉积物粒级相对较粗,呈现高值热导率(1.32±0.06)W/(m·k)和(1.34±0.06)W/(m·k),并以此为中心向周缘逐级降低;位于海底海槽处的1区和8区则属于海槽地貌,海底表层易于接受来自海台的过滤沉积物,粒级相对较细但压实程度较低,呈现低值热导率,分别为(1.10±0.06)W/(m·k)和(1.01±0.06)W/(m·k)。钻探区表层沉积物热导率偏高主要受控于内生地质作用控制下高流体疏导所携带的化学组分,而热导率的非均匀分布则受控于外生地质作用诸如地貌地形变化导致的粒级分布状况。 相似文献
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海底热流测量对于海洋地热学基础研究与天然气水合物等新兴海洋矿产资源勘测具有重要意义。海底热流原位测量是现代海底热流探测技术的发展方向。针对我国目前在该项技术的落后局面,通过对现存几种热流原位测量技术的原理与技术特点的对比与分析,指出了我国未来发展海底热流测量技术的方向与重点。 相似文献
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为研究小尺度海底沉积物样品的声衰减特性,作者提出了用声学探针测量海底沉积物声波幅值的新方法,对沉积物样品扰动小,两个测量点的距离可小于波长,为海底沉积物微观声衰减测量提供了新手段。作者用小于波长的间隔逐点测量了沉积物的压缩波幅值,数据分析表明沿沉积物柱状样全长的声衰减满足指数衰减模型。目前主要用同轴差距衰减测量法获得海底沉积物声衰减数据,但该方法不能辨识声衰减模型,因此不同海区的测量结果难以建立联系。对此作者又提出用声吸收系数反演的幅值比与声衰减系数反演的R值(两种幅值比的比值)作评价依据,分析了垂直轴差距衰减测量法获得的南海海底沉积物声衰减测量数据,发现部分沉积物样品声衰减的R值远大于1,其声衰减不满足指数衰减模型。在声衰减满足指数衰减模型的条件下,用Hamilton的声衰减和频率经验公式预报的南海沉积物声衰减比与作者用声学探针测量海底沉积物所得的声衰减比对比,通过对R值分析得出Hamilton的声衰减和频率经验公式可以预报南海沉积物声衰减比的范围。作者提出的声学探针测量海底沉积物声衰减的方法的优点是既能获得声衰减数据又能辨识声衰减模型,不同海区测量的沉积物声衰减比可用R值建立联系。 相似文献
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冲绳海槽天然气水合物与地质构造的关系 总被引:7,自引:0,他引:7
海底天然气水合物大多与通过切穿沉积盖层的断裂的上升烃类流体相关,这些高渗透带包括底辟和泥火山等侵入构造,所以海底断裂、底辟和泥火山等构造周围可能赋存天然气水合物;其次,高沉积速率和巨厚沉积层可使有机质迅速掩埋而保存起来,为天然气水合物的生成提供充足物源,因此,邻近陆坡河谷口的海底沉积扇也是天然气水合物赋存的有利地区;另外,由于陆坡区的水合物沉积层比海盆更容易受外界温压变化的影响发生失稳分解,诱发海底滑坡,所以滑坡与天然气水合物赋存之间的关系也非常密切。冲绳海槽邻近海域具有覆水深、沉积厚度大、沉积速率高和有机质丰富等有利赋存条件,目前的研究已经在该海域发现了天然气水合物赋存的地球物理证据BSR,因此,在现有研究基础上开展断裂、泥火山、海底扇、海底滑坡等与天然气水合物相关的构造研究,可以深入了解天然气水合物在不同地质构造中的分布特征与演化,为更精确地评估其资源潜力提供参考。 相似文献
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Song Yupu Zhao Guofan
Ph. D. Professor The State Key Laboratory of Coastal Offshore Engineering Dalian University of Technology Dalian Professor 《中国海洋工程》1994,(2)
-The temperature distributions obtained by different methods of analysis for solving thermal transfer of reinforced concrete (R. C.) submarine oil tanks (RCSOT), including flat wall method, cylinder wall method and finite element method, are compared with the experimental data of thermal transfer of RCSOT. The precision and scope of applicability of different methods are discussed. The principle for selecting analysis method for solving thermal transfer of RCSOT is given. The analytical and experimental temperature distributions show that the wall of RCSOT should consist of double walls and empty space between them should be filled with sand or other heat insulation materials to reduce the temperature difference of the wall and to prevent concrete from cracking. 相似文献
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XIU Zongxiang LIU Lejun XIE Qiuhong LI Jiagang HU Guanghai YANG Jianghui 《海洋学报(英文版)》2015,34(7):116-122
A large number of submarine landslides with different scales have been identified in the canyon area of the submarine pipeline route of Liwan 3-1 gas field. There is still much chance that submarine sl... 相似文献
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可用于海洋敏感器件封装的氮化铝陶瓷材料具有高的热导率特性,本文对它的热导率进行了实验研究。分析了影响烧结样品密度和热导率的因素。 相似文献
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Michael Anthony Lovell 《Marine Georesources & Geotechnology》2013,31(2):205-240
Abstract The problem of radioactive waste containment, the modeling of hydrocarbon formation processes, and the proposed laying of fiber‐optic communication cables on the seafloor have recently focused attention on the thermal and fluid flow properties of porous media. Both properties are difficult to determine accurately for large volumes of material, particularly where disturbance is inevitable either on sampling or penetration of the measuring device. Both properties, however, have been tentatively identified as bearing some form of analogy with electrical flow, and evaluation of these relationships with electrical measurements may provide practical means of obtaining rapid coverage of the sediment from a semi‐remote position. Using a variety of laboratory cells, an attempt has been made to evaluate useful relationships between electrical formation factor and thermal conductivity and/or permeability for both sands and clays. Formation factor exhibits a close relationship with permeability, and the capability of predicting permeability to within an order of magnitude is shown providing the grade of sediment is identified (e.g., sand or clay). Formation factor is related to porosity and while any one sample is best represented by Archie's (sands) or Winsauer's (clays) empirical law, the overall trend is a third‐degree polynomial; particle shape appears to dominate both porosity and permeability relationships with electrical formation factor. Thermal conductivity shows a clear dependence on the porosity of a saturated sediment. The successful prediction of thermal conductivity using a geometrical model requiring volume and thermal conductivity values for the components has been demonstrated for a variety of particle shapes and sizes. Thermal conductivity may be related to formation factor through the porosity of the sample for both sands and clays. 相似文献
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In July 2007, new marine heat flow data were collected at ten sites (HF01–10) in the central and southwestern sectors of the
Ulleung Basin (East Sea or Sea of Japan) as part of regional gas hydrate research. In addition, cores were collected at five
of these sites for laboratory analysis. The results show that the geothermal gradient ranged from 103–137 mK/m, and the in-situ
thermal conductivity from 0.82–0.95 W/m·K. Laboratory measurements of thermal conductivity were found to deviate by as much
as 40% from the in-situ measurements, despite the precautions taken to preserve the cores. Based on the in-situ conductivity,
the heat flow was found to increase with water depth toward the center of the basin, ranging from 84–130 mW/m2. Using a simple model, we estimated the heat flow from the depths of the BSR, and compared this with the observed heat flow.
In our study area, the two sets of values were quite consistent, the observed heat flows being slightly higher than the BSR-derived
ones. The evaluation of regional pre-1994 data revealed that the heat flow varied widely from 51–157 mW/m2 in and around the basin. Due to a large scatter in these older data, a clear relationship between heat flow and water depth
was not evident, in contrast to what would be expected for a rifted sedimentary basin. This raises the question as to whether
the pre-1994 data represent the true background heat flow from the underlying basin crust since the basin opening, and/or
whether they contain large measurement errors. In fact, evidence in support of the latter explanation exists. BSRs are generally
found in the deep parts of the basin, and vary by only ±15 m in depth below the seafloor. From the average BSR depth, we inferred
the background heat flow using a simple model, which in the case of the Ulleung Basin is approximately 120 and 80 mW/m2 for 2.5 and 1 km below sea level, respectively. 相似文献
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近壁圆柱绕流问题在海底悬跨管道的研究中具有重要的意义。在绕流阻力、升力以及海底土壤的耦合作用下,海底管道所发生的移位、悬跨等现象对于海底管道的安全运行构成了很大的威胁。正确预测各种绕流条件下管流之间的作用力是保证油气管道安全的首要任务。海底管道在极端海洋环境条件下的管、流相互作用为高雷诺数绕流问题,处于高雷诺数下的绕流模拟比处于低雷诺数下的绕流模拟要复杂很多,它需要更精细的网格以及合适的湍流模型。此文对处于悬跨状态下的海底管道进行数值研究,给出不同间隙比下海流绕流海底管道的流场结构形态,分析了间隙比对绕流阻力和绕流升力的影响,为进一步研究海底悬跨管道的受力和变形提供载荷边界数据。 相似文献